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SEMICONDUCTOR SUPERLATTICES WITH SMALL BAND OFFSETS

机译:具有小频带偏移的半导体超级晶格

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Optical transitions in small band offset superlattices are studied within the framework of the nearly free electron approximation, in which the weak superlattice potential is treated as a perturbation. Interband selection rules are derived for transitions involving conduction and valence band states at the superlattice Brillouin zone center and the zone edge. It is found that a number of new transitions can occur in such small-offset superlattices due to wave function mixing of different subband states. The effect of the effective mass on the optical transitions is also discussed. The theory is used to explain the results observed in magneto-optical absorption experiment in ZnSe/Zn_(1-x)Mn_xSe small-offset superlattices. Furthermore, the nearly free electron formulation is found to be in excellent agreement with rigorous multi-band numerical calculation on superlattices involving small band offsets.
机译:在近自由电子近似的框架内研究了小带偏移超晶格中的光学跃迁,其中弱的超晶格势被视为扰动。带间选择规则是针对涉及超晶格布里渊区域中心和区域边缘的导带和价带状态的跃迁而得出的。已经发现,由于不同子带状态的波函数混合,在这样的小偏移超晶格中可能发生许多新的跃迁。还讨论了有效质量对光学跃迁的影响。该理论用于解释在ZnSe / Zn_(1-x)Mn_xSe小偏移超晶格的磁光吸收实验中观察到的结果。此外,发现几乎自由的电子配方与涉及小带偏移的超晶格的严格多带数值计算非常吻合。

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